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Study on Temper Embrittlement and Hydrogen Embrittlement of a Hydrogenation Reactor by Small Punch Test

机译:小冲床研究加氢反应器的回火脆化和氢脆

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The study on temper embrittlement and hydrogen embrittlement of a test block from a 3Cr1Mo1/4V hydrogenation reactor after ten years of service was carried out by small punch test (SPT) at different temperatures. The SPT fracture energy E s p (derived from integrating the load-displacement curve) divided by the maximum load ( F m ) of SPT was used to fit the E sp / F m versus-temperature curve to determine the energy transition temperature ( T sp ) which corresponded to the ductile-brittle transition temperature of the Charpy impact test. The results indicated that the ratio of E sp / F m could better represent the energy of transition in SPT compared with E sp . The ductile-to-brittle transition temperature of the four different types of materials was measured using the hydrogen charging test by SPT. These four types of materials included the base metal and the weld metal in the as-received state, and the base metal and the weld metal in the de-embrittled state. The results showed that there was a degree of temper embrittlement in the base metal and the weld metal after ten years of service at 390 °C. The specimens became slightly more brittle but this was not obvious after hydrogen charging. Because the toughness of the material of the hydrogenation reactor was very good, the flat samples of SPT could not characterize the energy transition temperature within the liquid nitrogen temperature. Additionally, there was no synergetic effect of temper embrittlement and hydrogen embrittlement found in 3Cr1Mo1/4V steel.
机译:通过在不同温度下的小冲孔试验(SPT)对3Cr1Mo1 / 4V加氢反应器运行十年后的试块的回火脆化和氢脆进行了研究。用SPT断裂能E sp(通过对载荷-位移曲线求积分)除以SPT的最大载荷(F m)来拟合E sp / F m对温度曲线,以确定能量跃迁温度(T sp )对应于夏比冲击试验的韧性-脆性转变温度。结果表明,与E sp相比,E sp / F m的比例可以更好地代表SPT中的跃迁能量。使用通过SPT进行的氢气充填测试,测量了四种不同类型材料的韧性到脆性转变温度。这四种类型的材料包括处于接收状态的基础金属和焊缝金属,以及处于非嵌入状态的基础金属和焊缝金属。结果表明,在390°C下工作十年后,母材和焊缝金属有一定程度的回火脆化。样品变脆了一点,但是在充氢后这种现象并不明显。由于氢化反应器材料的韧性非常好,因此SPT的扁平样品无法表征液氮温度内的能量跃迁温度。此外,在3Cr1Mo1 / 4V钢中没有发现回火脆化和氢脆的协同作用。

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